A computational model that links non-periodic vasomotion to enhanced oxygenation in skeletal muscle

被引:11
作者
Pradhan, Ranjan K. [1 ]
Chakravarthy, V. S.
机构
[1] Indian Inst Technol, Dept Elect Engn, Madras 600036, Tamil Nadu, India
[2] Indian Inst Technol, Dept Biotechnol, Madras 600036, Tamil Nadu, India
关键词
vasomotion; chaos; capillary network; oxygenation; vascular control;
D O I
10.1016/j.mbs.2007.02.010
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
We propose a model of a capillary network in which chaotic capillary activity is crucial for efficient oxygenation of a muscle fiber. Tissue oxygenation by microcirculation is controlled by a complex pattern of opening and closing of precapillary sphincters, a phenomenon known as vasomotion. We model the individual precapillary sphincter as a non-linear oscillator that exhibits perfectly periodic vasomotion in isolation. The precapillary sphincters surrounding an active fiber are considered as a network; specific modes of interaction within this network result in complex patterns of vasomotion. In our model, efficient oxygenation of the fiber depends crucially on the mode of interaction among the vasomotions of the individual capillaries. Network interactions that lead to chaotic vasomotion are found to be essential for meeting the tissue oxygen demands precisely. Interactions that cause regular rhythmic patterns of vasomotion fail to meet oxygenation demands accurately. (C) 2007 Elsevier Inc. All rights reserved.
引用
收藏
页码:486 / 499
页数:14
相关论文
共 35 条
[1]   Vasomotion:: cellular background for the oscillator and for the synchronization of smooth muscle cells [J].
Aalkjær, C ;
Nilsson, H .
BRITISH JOURNAL OF PHARMACOLOGY, 2005, 144 (05) :605-616
[2]  
ARTHUR L, 2003, AM J PHYSIOL, V285, pH955
[3]   Advection and diffusion of substances in biological tissues with complex vascular networks [J].
Beard, DA ;
Bassingthwaighte, JB .
ANNALS OF BIOMEDICAL ENGINEERING, 2000, 28 (03) :253-268
[4]   Modeling advection and diffusion of oxygen in complex vascular networks [J].
Beard, DA ;
Bassingthwaighte, JB .
ANNALS OF BIOMEDICAL ENGINEERING, 2001, 29 (04) :298-310
[5]   HYPOXIA-INDUCED OR HYPEROXIA-INDUCED CHANGES IN ARTERIOLAR VASOMOTION IN SKELETAL-MUSCLE MICROCIRCULATION [J].
BERTUGLIA, S ;
COLANTUONI, A ;
COPPINI, G ;
INTAGLIETTA, M .
AMERICAN JOURNAL OF PHYSIOLOGY, 1991, 260 (02) :H362-H372
[6]   Interactions between nitric oxide and endothelin in the regulation of vascular tone of human resistance vessels in vivo [J].
Cardillo, CM ;
Kilcoyne, CM ;
Cannon, RO ;
Panza, JA .
HYPERTENSION, 2000, 35 (06) :1237-1241
[7]   Simultaneous blood-tissue exchange of oxygen, carbon dioxide, bicarbonate, and hydrogen ion [J].
Dash, Ranjan K. ;
Bassingthwaighte, James B. .
ANNALS OF BIOMEDICAL ENGINEERING, 2006, 34 (07) :1129-1148
[8]   MICROVASCULAR RESPONSES TO ALTERATIONS IN OXYGEN-TENSION [J].
DULING, BR .
CIRCULATION RESEARCH, 1972, 31 (04) :481-+
[9]   ASSESSMENT AND IMPACT OF HETEROGENEITIES OF CONVECTIVE OXYGEN-TRANSPORT PARAMETERS IN CAPILLARIES OF STRIATED-MUSCLE - EXPERIMENTAL AND THEORETICAL [J].
ELLSWORTH, ML ;
POPEL, AS ;
PITTMAN, RN .
MICROVASCULAR RESEARCH, 1988, 35 (03) :341-362
[10]  
ELLSWORTH ML, 1994, NEWS PHYSIOL SCI, V9, P119